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首页> 外文期刊>Journal of Neurophysiology >GABAA receptor-mediated Cl- currents in rat thalamic reticular and relay neurons.
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GABAA receptor-mediated Cl- currents in rat thalamic reticular and relay neurons.

机译:GABA A受体介导的大鼠丘脑网状神经和中继神经元的Cl电流。

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GABAA receptor-mediated Cl- currents in rat thalamic reticular and relay neurons. J. Neurophysiol. 78: 2280-2286, 1997. Spontaneous and evoked inhibitory postsynaptic currents (sIPSCs and eIPSCs) and responses to exogenously applied gamma-aminobutyric acid (GABA), mediated by GABA type A (GABAA) receptors, were recorded in inhibitory neurons of nucleus reticularis thalami (nRt) and their target relay cells in ventrobasal (VB) nuclei by using patch clamp techniques in rat thalamic slices. The decay of sIPSCs in both nRt and VB neurons was best fitted with two exponential components. The decay time constants of sIPSCs in nRt neurons were much slower (tau1 = 38 ms; tau2 = 186 ms) than those previously reported in a variety of preparations and two to three times slower than those in VB neurons (tau1 = 17 ms; tau2 = 39 ms). GABAA receptor-mediated Cl- currents directly evoked by local GABA application also had a much slower decay time constant in nRt (225 ms) than in VB neurons (115 ms). Slow decay of GABA responses enhances the efficacy of recurrent intranuclear inhibition in nRt. The results suggest a functional diversity of GABAA receptors that may relate to the known heterogeneity of GABAA receptor subunits in these two thalamic nuclei.
机译:GABA A受体介导的大鼠丘脑网状神经和中继神经元的Cl电流。 J.神经生理学。 78:2280-2286,1997。在网状核的抑制神经元中记录了自发和诱发的抑制性突触后电流(sIPSCs和eIPSCs)以及对由GABA A型(GABAA)受体介导的外源性γ-氨基丁酸(GABA)的反应。丘脑切片中,使用膜片钳技术将丘脑(nRt)及其靶基底中继细胞置于腹基底(VB)核中。 sIPSCs在nRt和VB神经元中的衰变最好与两个指数成分拟合。 nRt神经元中sIPSCs的衰减时间常数比以前在各种准备中报道的慢得多(tau1 = 38 ms; tau2 = 186 ms),比VB神经元(tau1 = 17 ms; tau2)慢两到三倍。 = 39毫秒)。由GABA局部应用直接引起的GABAA受体介导的Cl电流在nRt(225 ms)中的衰减时间常数也比在VB神经元(115 ms)中慢得多。 GABA反应的缓慢衰减增强了nRt中复发性核内抑制的功效。结果表明,GABAA受体的功能多样性可能与这两个丘脑核中GABAA受体亚基的已知异质性有关。

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